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    • 1. 发明授权
    • Process chamber, inline coating installation and method for treating a substrate
    • 处理室,在线涂布装置和处理基材的方法
    • US07837796B2
    • 2010-11-23
    • US11680361
    • 2007-02-28
    • Juergen HenrichMichael SchaeferEdgar Haberkorn
    • Juergen HenrichMichael SchaeferEdgar Haberkorn
    • C23C16/00
    • C23C16/54
    • A process chamber 1 for PECVD (Plasma Enhanced Chemical Vapor Deposition) coating of a substrate includes an electrode, which is integrated in a contact frame, which is firmly connected to the recipient. A movable carrier in the process chamber carries at least one substrate. The carrier is transported by means of a driven roller positioner into the process chamber or out of the process chamber along a transport route defined by the movement. As soon as the carrier inside the recipient has reached a certain position, the lower roller positioner is uncoupled from carrier by lowering by means of a lifting device. In this regard, the carrier detaches itself from the upper roller positioner. Then, the carrier is accepted by a transfer device (not shown) and brought from the transport position laterally into a treatment position in contact with the contact frame. In this way, reliable contact is produced between the electrode and a counter-electrode provided in carrier. At the same time, other carriers, in so far as the contact frame is removed laterally far enough from the transport route, during the coating of the carrier, can be moved past this.
    • 用于基板的PECVD(等离子体增强化学气相沉积)涂层的处理室1包括集成在接触框架中的电极,其牢固地连接到接收器。 处理室中的可移动载体承载至少一个基板。 载体通过从动辊定位器沿着由运动限定的运输路线输送到处理室中或从处理室中输送。 一旦收件人内的承运人已经达到一定的位置,则下辊定位器通过借助于提升装置的下降而脱离载体。 在这方面,载体将自身从上辊定位器分离。 然后,托架被转移装置(未示出)接受,并从运输位置横向地进入与接触框架接触的处理位置。 以这种方式,在电极和设置在载体中的对电极之间产生可靠的接触。 同时,在载体的涂覆期间,其他载体,只要在接触框架从输送路线横向移开足够远的位置即可移动过去。
    • 2. 发明申请
    • PROCESS CHAMBER, INLINE COATING INSTALLATION AND METHOD FOR TREATING A SUBSTRATE
    • 过程室,在线涂装安装和处理基板的方法
    • US20080184933A1
    • 2008-08-07
    • US11680361
    • 2007-02-28
    • Juergen HenrichMichael SchaeferEdgar Haberkorn
    • Juergen HenrichMichael SchaeferEdgar Haberkorn
    • C23C16/455
    • C23C16/54
    • A process chamber 1 for PECVD (Plasma Enhanced Chemical Vapor Deposition) coating of a substrate includes an electrode, which is integrated in a contact frame, which is firmly connected to the recipient. A movable carrier in the process chamber carries at least one substrate. The carrier is transported by means of a driven roller positioner into the process chamber or out of the process chamber along a transport route defined by the movement. As soon as the carrier inside the recipient has reached a certain position, the lower roller positioner is uncoupled from carrier by lowering by means of a lifting device. In this regard, the carrier detaches itself from the upper roller positioner. Then, the carrier is accepted by a transfer device (not shown) and brought from the transport position laterally into a treatment position in contact with the contact frame. In this way, reliable contact is produced between the electrode and a counter-electrode provided in carrier. At the same time, other carriers, in so far as the contact frame is removed laterally far enough from the transport route, during the coating of the carrier, can be moved past this.
    • 用于基板的PECVD(等离子体增强化学气相沉积)涂层的处理室1包括集成在接触框架中的电极,其牢固地连接到接收器。 处理室中的可移动载体承载至少一个基板。 载体通过从动辊定位器沿着由运动限定的运输路线输送到处理室中或从处理室中输送。 一旦收件人内的承运人已经达到一定的位置,则下辊定位器通过借助于提升装置的下降而脱离载体。 在这方面,载体将自身从上辊定位器分离。 然后,托架被转移装置(未示出)接受,并从运输位置横向地进入与接触框架接触的处理位置。 以这种方式,在电极和设置在载体中的对电极之间产生可靠的接触。 同时,在载体的涂覆期间,其他载体,只要在接触框架从输送路线横向移开足够远的位置即可移动过去。
    • 4. 发明申请
    • HIGH-VOLTAGE CONNECTOR COMPONENT FOR A HIGH-VOLTAGE CABLE, HIGH-VOLTAGE CONNECTOR, AND METHOD OF MANUFACTURING A HIGH-VOLTAGE CONNECTOR COMPONENT
    • 用于高压电缆,高压连接器的高压连接器部件以及制造高压连接器部件的方法
    • US20120208386A1
    • 2012-08-16
    • US13372607
    • 2012-02-14
    • BERND BEUSTERMichael Schaefer
    • BERND BEUSTERMichael Schaefer
    • H01R13/52B29C39/14B29C45/14
    • H01R13/53
    • A high-voltage connector component for a high-voltage cable comprises an insulator made of a polymer material which surrounds a cable end portion of the high-voltage cable, wherein the insulator is received in a housing and is made of an elastomer material, wherein the elastomer material is filled, cast or injected into the housing in order to form the insulator. The connector component is designed such that upon connection to a corresponding connector component a basically closed pressure chamber is formed between the housing, the corresponding connector component and the cable end portion, wherein the pressure chamber is basically provided for being completely occupied by the insulator. Loading the insulator with pressure results in a gap-free, high-voltage-sealed pressing of the corresponding connector component to the insulator, a gap-free, high-voltage-sealed pressing of the insulator to the housing, and a gap-free, high-voltage-sealed pressing of the insulator to the sheath surface of the cable end portion.
    • 用于高压电缆的高压连接器部件包括由聚合物材料制成的绝缘体,其围绕高压电缆的电缆端部分,其中绝缘体被容纳在壳体中并且由弹性体材料制成,其中 为了形成绝缘体,将弹性体材料填充,铸造或注入到壳体中。 连接器部件被设计成使得在连接到相应的连接器部件上时,在壳体,相应的连接器部件和电缆端部之间形成基本上闭合的压力室,其中压力室基本上被设置成被绝缘体完全占据。 用压力加载绝缘体导致相应的连接器部件到绝缘体的无间隙,高压密封的压制,绝缘体到壳体的无缝隙,高压密封的压制,以及无缝隙 将绝缘体高压密封地压到电缆端部的护套表面。
    • 7. 发明授权
    • Start-up clutch assembly
    • 起动离合器总成
    • US07431138B2
    • 2008-10-07
    • US11146535
    • 2005-06-07
    • Johannes HeinrichHans Juergen HauckMichael Schaefer
    • Johannes HeinrichHans Juergen HauckMichael Schaefer
    • F16D25/0638
    • F16D25/0638
    • A start-up clutch including a disk clutch having an outer disk carrier and an inner disk carrier with a multi-disk clutch pack disposed therebetween. The multi-disk clutch pack is adapted to engage and provide torque translation between the inner and the outer carriers. A piston is adapted to be actuated by fluid pressure to cause the multi-disk clutch pack to engage. A first cavity is adapted to be selectively supplied with pressurized fluid to actuate the piston. A second cavity is adapted to be selectively supplied with pressurized fluid to provide cooling to the multi-disk clutch pack. A first fluid passage adapted to provide pressurized fluid to the first cavity, and a second fluid passage is adapted to provide pressurized fluid to the second fluid passage.
    • 一种起动离合器,包括具有外盘托架的盘式离合器和设置在其间的多盘离合器组件的内盘托架。 多盘离合器组件适于在内部和外部载体之间接合并提供扭矩平移。 活塞适于由流体压力致动以使多盘式离合器组件接合。 第一腔适于选择性地供应加压流体以致动活塞。 第二腔适于选择性地供应加压流体以向多盘式离合器组件提供冷却。 适于向第一腔提供加压流体的第一流体通道,以及第二流体通道适于向第二流体通道提供加压流体。
    • 9. 发明授权
    • Vibration damping device, in particular torsional vibration damper and process for controlling hysteresis
    • 振动阻尼装置,特别是扭转振动阻尼器和控制滞后过程
    • US06681911B2
    • 2004-01-27
    • US09896287
    • 2001-06-29
    • Juergen KrollNorbert BastelMichael Schaefer
    • Juergen KrollNorbert BastelMichael Schaefer
    • F16H314
    • F16F15/1397
    • The invention concerns a vibration damping device (2). This includes at least two elements—a primary element (3.1) and a secondary element (3.2), which are limited in movement in relation to each other. The primary element (3.1) and the secondary element (3.2) can be coupled together using a spring coupling. The means to implement spring coupling include at least one spring device (4.1, 4.N). Based on the invention, there is at least one adjustable clutch device (15, 15′), including at least two elements (16, 17; 16′, 17′) rubbing against each other, which bring primary and secondary elements (3.1, 3.2) into friction contact. In addition, there is a power generator or force producing device (39) to produce a controllable friction contact for the elements rubbing against each other (16, 17; 16′, 17′).
    • 本发明涉及一种减振装置(2)。 这包括至少两个元件 - 主要元件(3.1)和次要元件(3.2),其相对于彼此的移动受到限制。 主元件(3.1)和次要元件(3.2)可以使用弹簧联接器联接在一起。 实现弹簧联接的装置包括至少一个弹簧装置(4.1,4N)。基于本发明,存在至少一个可调离合装置(15,15'),其包括至少两个元件(16,17; 16',17')彼此摩擦,使主要和次要元素(3.1,3.2)与摩擦接触。 另外,还有一个发电机或力产生装置(39),用于产生一个可控制的摩擦接触件,以使元件彼此摩擦(16,17; 16',17')。